Department of Chemistry Giacomo Ciamician Alma Mater Studiorum, University of Bologna, Via Selmi 2, 40136, Bologna, Italy.
Department of Food and Drug Sciences, University of Parma, Parco Area delle Scienze 27/a, 43124-, Parma, Italy.
ChemSusChem. 2021 Jun 21;14(12):2591-2600. doi: 10.1002/cssc.202100623. Epub 2021 May 11.
The identification of a green, versatile, user-friendly, and efficient methodology is necessary to facilitate the use of Heck-Cassar-Sonogashira (HCS) cross-coupling reaction in drug discovery and industrial production in the pharmaceutical segment. The Heck-Cassar and Sonogashira protocols, using N-hydroxyethylpyrrolidone (HEP)/water/N,N,N',N'-tetramethyl guanidine (TMG) as green solvent/base mixture and sulfonated phosphine ligands, allowed to recycle the catalyst, always guaranteeing high yields and fast conversion under mild conditions, with aryl iodides, bromides, and triflates. No catalyst leakage or metal contamination of the final product were observed during the HCS recycling. To our knowledge, a turnover number (TON) up to 2375, a turnover frequency (TOF) of 158 h , and a process mass intensity (PMI) around 7 that decreased around 3 after solvent, base, and palladium recovery, represent one of the best results to date using a sustainable protocol. The Heck-Cassar protocol using sSPhos was successfully applied to the telescoped synthesis of Erlotinib (TON: 1380; TOF: 46 h ).
在药物发现和医药领域的工业生产中,为了促进 Heck-Cassar-Sonogashira(HCS)交叉偶联反应的应用,有必要开发一种绿色、多功能、用户友好且高效的方法。使用 N-羟乙基吡咯烷酮(HEP)/水/N,N,N',N'-四甲基胍(TMG)作为绿色溶剂/碱混合物和磺化膦配体的 Heck-Cassar 和 Sonogashira 方案,可以回收催化剂,始终在温和条件下保证高产率和快速转化,适用于芳基碘化物、溴化物和三氟甲磺酸酯。在 HCS 回收过程中,没有观察到催化剂泄漏或最终产物的金属污染。据我们所知,使用可持续协议,目前最高的转换数(TON)可达 2375,转换频率(TOF)为 158 h,过程质量强度(PMI)约为 7,回收溶剂、碱和钯后约减少 3,这是迄今为止最好的结果之一。使用 sSPhos 的 Heck-Cassar 方案成功应用于厄洛替尼的缩合合成(TON:1380;TOF:46 h)。